靶向蛋白质降解的癌症特异性cax -靶向超分子溶酶体嵌合体(supera - lytac)

IF 14.1 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Dohyun Kim, Gyeongseok Yang, Chaelyeong Lim, Gaeun Park, Jaemo Lee, Youjung Sim, Ja-Hyoung Ryu
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引用次数: 0

摘要

最近,靶向蛋白降解(TPD)策略已经成为解决不可药物蛋白的一个有希望的解决方案。虽然大多数TPD策略针对细胞内蛋白,但针对细胞外或膜蛋白的选择有限。本文报道了靶向癌症特异性碳酸酐酶IX (CAIX)的超分子纳米纤维溶酶体嵌合体(supera - lytac)。两种自组装两亲肽被合成:一种与目标蛋白(POI)相互作用,另一种通过靶向癌症特异性酶介导溶酶体内吞作用。值得注意的是,这两种多肽共同组装成纳米纤维,能够以时空方式靶向癌细胞。通过动态和多价结合,形成三元络合物(超分子嵌合纳米结构;cax -纳米纤维-POI),其内化到溶酶体中,POI通过溶酶体的催化活性被降解。这项研究证明了超分子方法在扩大LYTAC技术范围方面的潜力,为未来设计TPD策略提供了新的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cancer Specific CAIX-Targeting Supramolecular Lysosome-Targeting Chimeras (Supra-LYTAC) for Targeted Protein Degradation

Cancer Specific CAIX-Targeting Supramolecular Lysosome-Targeting Chimeras (Supra-LYTAC) for Targeted Protein Degradation

Cancer Specific CAIX-Targeting Supramolecular Lysosome-Targeting Chimeras (Supra-LYTAC) for Targeted Protein Degradation

Cancer Specific CAIX-Targeting Supramolecular Lysosome-Targeting Chimeras (Supra-LYTAC) for Targeted Protein Degradation

Recently, targeted protein degradation (TPD) strategies have emerged as a promising solution to tackle undruggable proteins. While most TPD strategies target intracellular proteins, limited options exist for targeting extracellular or membrane proteins. Herein, cancer specific carbonic anhydrase IX (CAIX)-targeting supramolecular nanofibrous lysosome-targeting chimeras (Supra-LYTAC) is reported. Two self-assembling amphiphilic peptides are synthesized: one that interacts with the protein of interest (POI), and another that mediates lysosomal endocytosis by targeting a cancer-specific enzyme. Notably, these two peptides co-assemble into nanofibers capable of targeting cancer cells in a spatiotemporal manner. Through dynamic and multivalent binding, a ternary complex form (supramolecular chimeric nanostructure; CAIX-nanofiber-POI), which undergoes internalization into lysosomes where the POI is degraded through lysosomal catalytic activity. This study demonstrates the potential of supramolecular approaches to expand the scope of LYTAC technology, offering new opportunities for designing TPD strategies in the future.

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来源期刊
Advanced Science
Advanced Science CHEMISTRY, MULTIDISCIPLINARYNANOSCIENCE &-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
18.90
自引率
2.60%
发文量
1602
审稿时长
1.9 months
期刊介绍: Advanced Science is a prestigious open access journal that focuses on interdisciplinary research in materials science, physics, chemistry, medical and life sciences, and engineering. The journal aims to promote cutting-edge research by employing a rigorous and impartial review process. It is committed to presenting research articles with the highest quality production standards, ensuring maximum accessibility of top scientific findings. With its vibrant and innovative publication platform, Advanced Science seeks to revolutionize the dissemination and organization of scientific knowledge.
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